Conference paper Open Access

A Novel Error Rate Estimation Approach for UltraScale+ SRAM-based FPGAs

Sterpone, Luca; Azimi, Sarah; Bozzoli, Ludovica; Du, Boyang; Lange, Thomas; Glorieux, Maximilien; Alexandrescu, Dan; Polo, Cesar Boatella; Codinachs, David Merodio


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    "description": "<p>SRAM-based FPGA devices manufactured in FinFET technologies provide performances and characteristics suitable for avionics and aerospace applications. The estimation of error rate sensitivity to harsh environments is a major concern for enabling their usage on such application fields. In this paper, we propose a new estimation approach able to consider the radiation effects on the configuration memory and logic layer of FPGAs, providing a comprehensive Application Error Rate probability estimation. Experimental results provide a comparison between radiation test campaigns, which demonstrates the feasibility of the proposed solution.</p>", 
    "language": "eng", 
    "title": "A Novel Error Rate Estimation Approach for UltraScale+ SRAM-based FPGAs", 
    "license": {
      "id": "CC-BY-NC-ND-4.0"
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    "notes": "This work was supported as part of the RESCUE project that has received funding from the European Union's Horizon\n2020 research and innovation programme under the Marie Sk\u0142odowska-Curie grant agreement No. 722325 and by the European Space Agency under contract No. 4000116569.", 
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    "publication_date": "2018-11-22", 
    "creators": [
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        "affiliation": "Politecnico di Torino", 
        "name": "Sterpone, Luca"
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        "affiliation": "Politecnico di Torino", 
        "name": "Azimi, Sarah"
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        "affiliation": "Politecnico di Torino", 
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        "affiliation": "Politecnico di Torino", 
        "name": "Du, Boyang"
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        "orcid": "0000-0002-5002-3679", 
        "affiliation": "iRoC Technologies", 
        "name": "Lange, Thomas"
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        "affiliation": "iRoC Technologies", 
        "name": "Glorieux, Maximilien"
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        "affiliation": "European Space Agency", 
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